心肌保护
心肌梗塞
医学
利钠肽
心脏病学
内科学
心钠素
旁分泌信号
肌肉注射
药理学
肽
生物安全
核糖核酸
受体
心力衰竭
脑利钠肽
心肌炎
分泌物
细胞疗法
心功能曲线
蛋白酶
细胞
梗塞
间充质干细胞
内分泌学
转录组
作者
Kaiyue Zhang,Hongyan Tao,Dashuai Zhu,Zhang Yue,Shiqi Hu,Yiping Wu,Na Yan,Yilan Hu,Shuo Liu,Mengrui Liu,Torsten Vahl,Lauren S. Ranard,Xiao Cheng,А. Романов,Jiaming Liu,Shuai Zhang,Yuan Li,Chao Lu,Ming Shen,Andrew Lewis
出处
期刊:Science
[American Association for the Advancement of Science]
日期:2026-03-05
卷期号:391 (6789): edau9394-edau9394
被引量:6
标识
DOI:10.1126/science.adu9394
摘要
Self-amplifying RNA (saRNA) enables sustained protein expression from a single administration. In this study, we developed an intramuscular saRNA-lipid nanoparticle (saNppa-LNP) therapy encoding natriuretic peptide type A ( Nppa ) for cardioprotection. A single injection induced sustained pro–atrial natriuretic peptide (pro-ANP) secretion for 4 weeks; pro-ANP was subsequently cleaved by the cardiac protease corin into active ANP, producing robust cardioprotection in mouse and swine myocardial infarction models. At equivalent doses, saNppa achieved greater efficacy than conventional mRNA. Single-nucleus transcriptomics identified natriuretic peptide receptor 1–positive ( Npr1 + ) endothelial and epicardial cells as primary effectors, with saNppa-LNPs reshaping their paracrine profile to promote cardiomyocyte regeneration and suppress fibrosis. Longitudinal biosafety assessments revealed no systemic toxicity. Together, these results demonstrate that one-shot saNppa-LNP therapy offers durable cardioprotection, supporting the broader potential of saRNA-LNP–based approaches for cardiac therapy.
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